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Principles and Applications of Photoredox Catalysis: Trifluoromethylation and Beyond

机译:光氧化还原催化的原理和应用:三氟甲基化及以后

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Photoredox catalysis has attracted the increasing attention of chemists in various fields from the viewpoints of green chemistry, solar chemistry, clean redox processes, and radical chemistry. Discussion of the principles and features of photoredox catalysis will be followed by illustration using typical examples with emphasis on the reactions developed in the authors' laboratory which proceed via an oxidative quenching cycle accompanying reduction of external substrates in the first stage. Photoredox catalysis turns out to be quite effective for trifluoromethylation of olefinic substrates with electrophilic trifluoromethylating reagents such as Umemoto's and Togni's reagents, 1e-reduction of which generates the key intermediate, trifluoromethyl radical. Key features of photoredox catalysis will be discussed in terms of visible light-driven reactions, radical reactions, redox-neutral system and atom economy. The concept can be extended to other radical systems such as N- and C-centered radicals. This review article will be closed with an overview of future prospects for photoredox catalysis.
机译:从绿色化学,太阳化学,清洁的氧化还原过程和自由基化学的观点来看,光氧化还原催化已吸引了各个领域的化学家越来越多的关注。在讨论光氧化还原催化的原理和特征之后,将使用典型的例子进行说明,重点放在作者实验室中开发的反应上,这些反应是通过在第一阶段伴随外部底物还原的氧化淬灭循环进行的。事实证明,光氧化还原催化对于使用亲电子三氟甲基化试剂(例如梅本氏和Togni试剂)的烯烃底物进行三氟甲基化非常有效,该试剂的1e还原可生成关键的中间体三氟甲基。将在可见光驱动反应,自由基反应,氧化还原中性系统和原子经济性方面讨论光氧化还原催化的关键特征。该概念可以扩展到其他自由基系统,例如以N和C为中心的自由基。这篇综述文章将以光氧化还原催化的未来前景概述为结尾。

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